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首页> 外文期刊>Catalysis science & technology >Efficient non-noble Ni-Cu based catalysts for the valorization of palmitic acid through a decarboxylation reaction
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Efficient non-noble Ni-Cu based catalysts for the valorization of palmitic acid through a decarboxylation reaction

机译:高效的非贵族Ni-Cu为基础的催化剂棕榈酸通过稳定物价脱羧反应

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摘要

The production of n-paraffins from biomass derivatives appears as an alternative to petroleum-derived compounds for the production of fuels, energy, and chemicals. Deoxygenation reactions, especially decarboxylation (DCX), are economically viable and are generally carried out with noble metal catalysts (Pt and Pd). Taking into account the cost and deactivation issues related to these catalysts, the development of non-noble metal catalysts is highly desirable yet challenging. For this purpose, non-noble monometallic catalysts (Ni, Fe, Cu, and Ag) and Ni-based bimetallic catalysts were studied for the DCX of palmitic acid (PA). Surprisingly, Ni-Cu/C systems were by far the most advantageous; the presence of Cu prevents the deactivation of the catalyst, decreases the reduction temperature, and significantly improves the yield of n-pentadecane (n-PD). The as-prepared catalysts formed a Ni-Cu alloy, but Cu- and Ni-rich phases were formed upon annealing. The higher Ni content in the 10% Ni 10% Cu/C catalyst resulted in a higher proportion of metallic Ni on the surface and a higher charge transfer from Ni to Cu. Thus, the best catalytic performance with full PA conversion and 95% selectivity to n-PD in 6 h was obtained at 320 degrees C, using 10 vol% of H-2 in N2 and an operating pressure of 40 bar. Furthermore, this catalyst exhibited excellent recyclability under similar reaction conditions. Mechanistic studies confirmed the high catalyst selectivity, and excellent performance was observed for the DCX of stearic acid. This highlights the potential of this Ni-Cu catalyst for DCX of other fatty acids.
机译:n-paraffins从生物质能的生产衍生品似乎作为替代加油站的化合物的生产燃料、能源和化学物质。反应,尤其是脱羧(克莱斯勒)经济上可行的,一般与贵金属催化剂(Pt和Pd)。考虑到成本和失活的问题有关这些催化剂的发展非贵金属催化剂是非常可取的具有挑战性的。使用单金属的催化剂(镍、铁、铜、和Ag)镍基双金属催化剂进行了研究克莱斯勒的棕榈酸(PA)。Ni-Cu / C系统是迄今为止最有利的;失活的催化剂,降低了降低温度,显著提高的收益率n-pentadecane (n-PD)。和催化剂组成了一个Ni-Cu合金,但是铜-和Ni-rich阶段形成的退火。10%的铜/ C催化剂导致更高的比例金属镍的表面和更高的费用从镍铜。性能与PA转换和95%选择性n-PD 6 h是在320年获得的度,使用10卷% 2的N2和一个操作压力的40条。催化剂表现出良好的可回收性类似的反应条件。证实了催化剂选择性高,观察性能优良的克莱斯勒硬脂酸。这对其他脂肪酸的克莱斯勒Ni-Cu催化剂。

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